Study on the Impact of Step Layout on Secondary Energy Dissipation and Flow Pattern of Spillway Tailwater

A secondary energy dissipation is required between the sill underflow stilling basin and the downstream tailrace at the outlet of the Dabaitian Reservoir spillway in Fengqing County,Yunnan Province.At the same time,the stepped energy dissipation section is connected through a 40° bend to adapt to th...

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Main Authors: YANG Ruiguo, QIU Yong, CHEN Yubin, YUE Cuiyun, YIN Xingtang
Format: Article
Language:zho
Published: Editorial Office of Pearl River 2021-01-01
Series:Renmin Zhujiang
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Online Access:http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2021.03.014
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author YANG Ruiguo
QIU Yong
CHEN Yubin
YUE Cuiyun
YIN Xingtang
author_facet YANG Ruiguo
QIU Yong
CHEN Yubin
YUE Cuiyun
YIN Xingtang
author_sort YANG Ruiguo
collection DOAJ
description A secondary energy dissipation is required between the sill underflow stilling basin and the downstream tailrace at the outlet of the Dabaitian Reservoir spillway in Fengqing County,Yunnan Province.At the same time,the stepped energy dissipation section is connected through a 40° bend to adapt to the change of terrain.Through the hydraulic model test research,based on the original plan,after the water flowing out of the stilling basin passes through the stepped bend,an obvious Z-shaped folded water flow is produced on the plane.When it occurs once in 30 years,the water velocity on the left side of the bend reaches 9.97 m/s,threatening the stability of the rock formations along the slope of the left bank.The modified plan of step backward movement can effectively improve the flow pattern in the bend.On this basis,an improved plan to reduce the size of the original step (2.50 m×1.50 m to 1.00 m×0.60 m) is proposed to avoid falling water flow at the location of the step in the case of frequent small-flow floods.The research results show that in the improved stepped energy dissipation combination for bend,the water depth distribution along the cross section of the tailrace downstream of the stilling basin is relatively even in the case of small-flow floods,and the flow patten is improved significantly,so the water flowing back to the river smoothly is realized under frequent flood discharges.
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institution Kabale University
issn 1001-9235
language zho
publishDate 2021-01-01
publisher Editorial Office of Pearl River
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series Renmin Zhujiang
spelling doaj-art-1d06a746c75d4edaa155caa5226d04762025-01-15T02:30:45ZzhoEditorial Office of Pearl RiverRenmin Zhujiang1001-92352021-01-014247650707Study on the Impact of Step Layout on Secondary Energy Dissipation and Flow Pattern of Spillway TailwaterYANG RuiguoQIU YongCHEN YubinYUE CuiyunYIN XingtangA secondary energy dissipation is required between the sill underflow stilling basin and the downstream tailrace at the outlet of the Dabaitian Reservoir spillway in Fengqing County,Yunnan Province.At the same time,the stepped energy dissipation section is connected through a 40° bend to adapt to the change of terrain.Through the hydraulic model test research,based on the original plan,after the water flowing out of the stilling basin passes through the stepped bend,an obvious Z-shaped folded water flow is produced on the plane.When it occurs once in 30 years,the water velocity on the left side of the bend reaches 9.97 m/s,threatening the stability of the rock formations along the slope of the left bank.The modified plan of step backward movement can effectively improve the flow pattern in the bend.On this basis,an improved plan to reduce the size of the original step (2.50 m×1.50 m to 1.00 m×0.60 m) is proposed to avoid falling water flow at the location of the step in the case of frequent small-flow floods.The research results show that in the improved stepped energy dissipation combination for bend,the water depth distribution along the cross section of the tailrace downstream of the stilling basin is relatively even in the case of small-flow floods,and the flow patten is improved significantly,so the water flowing back to the river smoothly is realized under frequent flood discharges.http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2021.03.014secondary energy dissipationflow patternstep layoutstilling basindesign and application
spellingShingle YANG Ruiguo
QIU Yong
CHEN Yubin
YUE Cuiyun
YIN Xingtang
Study on the Impact of Step Layout on Secondary Energy Dissipation and Flow Pattern of Spillway Tailwater
Renmin Zhujiang
secondary energy dissipation
flow pattern
step layout
stilling basin
design and application
title Study on the Impact of Step Layout on Secondary Energy Dissipation and Flow Pattern of Spillway Tailwater
title_full Study on the Impact of Step Layout on Secondary Energy Dissipation and Flow Pattern of Spillway Tailwater
title_fullStr Study on the Impact of Step Layout on Secondary Energy Dissipation and Flow Pattern of Spillway Tailwater
title_full_unstemmed Study on the Impact of Step Layout on Secondary Energy Dissipation and Flow Pattern of Spillway Tailwater
title_short Study on the Impact of Step Layout on Secondary Energy Dissipation and Flow Pattern of Spillway Tailwater
title_sort study on the impact of step layout on secondary energy dissipation and flow pattern of spillway tailwater
topic secondary energy dissipation
flow pattern
step layout
stilling basin
design and application
url http://www.renminzhujiang.cn/thesisDetails#10.3969/j.issn.1001-9235.2021.03.014
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AT qiuyong studyontheimpactofsteplayoutonsecondaryenergydissipationandflowpatternofspillwaytailwater
AT chenyubin studyontheimpactofsteplayoutonsecondaryenergydissipationandflowpatternofspillwaytailwater
AT yuecuiyun studyontheimpactofsteplayoutonsecondaryenergydissipationandflowpatternofspillwaytailwater
AT yinxingtang studyontheimpactofsteplayoutonsecondaryenergydissipationandflowpatternofspillwaytailwater